Brown adipose tissue CoQ deficiency activates the integrated stress response and FGF21-dependent mitohormesis

Author:

Chang Ching-FangORCID,Gunawan Amanda LORCID,Liparulo IreneORCID,Zushin Peter-James H,Vitangcol Kaitlyn,Timblin Greg A,Saijo Kaoru,Wang Biao,Parlakgül GüneşORCID,Arruda Ana Paula,Stahl AndreasORCID

Abstract

AbstractCoenzyme Q (CoQ) is essential for mitochondrial respiration and required for thermogenic activity in brown adipose tissues (BAT). CoQ deficiency leads to a wide range of pathological manifestations, but mechanistic consequences of CoQ deficiency in specific tissues, such as BAT, remain poorly understood. Here, we show that pharmacological or genetic CoQ deficiency in BAT leads to stress signals causing accumulation of cytosolic mitochondrial RNAs and activation of the eIF2α kinase PKR, resulting in activation of the integrated stress response (ISR) with suppression of UCP1 but induction of FGF21 expression. Strikingly, despite diminished UCP1 levels, BAT CoQ deficiency displays increased whole-body metabolic rates at room temperature and thermoneutrality resulting in decreased weight gain on high-fat diets (HFD). In line with enhanced metabolic rates, BAT and inguinal white adipose tissue (iWAT) interorgan crosstalk caused increased browning of iWAT in BAT-specific CoQ deficient animals. This mitohormesis-like effect depends on the ATF4-FGF21 axis and BAT-secreted FGF21, revealing an unexpected role for CoQ in the modulation of whole-body energy expenditure with wide-ranging implications for primary and secondary CoQ deficiencies.

Funder

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

American Heart Association

American Diabetes Association

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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